Department of Physiology, Feinberg School of Medicine, Northwestern University, Chicago, Illinois 60611, Department of Pediatrics and Department of Physiology, School of Medicine, Keio University, Shinjuku-ku, Tokyo 160-8582, and Department of Neurobiology, Weinberg College of Arts and Sciences, Northwestern University, Evanston, Illinois 60208.
J Neurosci. 2014 Jan 8;34(2):446-50. doi: 10.1523/JNEUROSCI.4447-13.2014.
Delays in synaptic and neuronal development in the cortex are key hallmarks of fragile X syndrome, a prevalent neurodevelopmental disorder that causes intellectual disability and sensory deficits and is the most common known cause of autism. Previous studies have demonstrated that the normal progression of plasticity and synaptic refinement during the critical period is altered in the cortex of fragile X mice. Although the disruptions in excitatory synapses are well documented in fragile X, there is less known about inhibitory neurotransmission during the critical period. GABAergic transmission plays a crucial trophic role in cortical development through its early depolarizing action. At the end of cortical critical period, response properties of GABA transform into their mature hyperpolarizing type due to developmental changes in intracellular chloride homeostasis. We found that the timing of the switch from depolarizing to hyperpolarizing GABA is delayed in the cortex of fragile X mice and there is a concurrent alteration in the expression of the neuronal chloride cotransporter NKCC1 that promotes the accumulation of intracellular chloride. Disruption of the trophic effects of GABA during cortical development could contribute to the altered trajectory of synaptic maturation in fragile X syndrome.
皮质中突触和神经元发育的延迟是脆性 X 综合征的主要特征,脆性 X 综合征是一种常见的神经发育障碍,可导致智力残疾和感觉缺陷,是自闭症最常见的已知病因。先前的研究表明,在关键期内,可塑性和突触细化的正常进展在脆性 X 小鼠的皮质中发生改变。尽管脆性 X 中兴奋性突触的破坏已得到充分证实,但在关键期内对抑制性神经传递的了解较少。GABA 能传递通过其早期去极化作用在皮质发育中发挥关键的营养作用。在皮质关键期结束时,由于细胞内氯离子稳态的发育变化,GABA 的反应特性转变为成熟的超极化类型。我们发现,在脆性 X 小鼠的皮质中,从去极化到超极化 GABA 的转换时间延迟,并且神经元氯离子共转运蛋白 NKCC1 的表达也发生了变化,促进了细胞内氯离子的积累。皮质发育过程中 GABA 的营养作用受到破坏可能导致脆性 X 综合征中突触成熟轨迹的改变。